Reconstruction: PASS — state fully reconstructable from 9 ---ci--- blocks.
File discipline: PASS (after fix) — ARCHITECTURE.md had 0 references to
v1.10 components; added a v1.10 addendum covering regression-class VERIFY,
local emulating adapters, capability re-verification sweep, and the 7
adapter defect fixes.
Branch hygiene: PASS — main only, no orphan branches.
Commit discipline: PASS — 9/9 commits have ---ci--- blocks; no stale
decisions; no unresolved escalations.
---ci---
project: acdl
phase: 0
milestone: v1.10
status: audit
lessons:
- ARCHITECTURE.md must be updated when new subsystems are added; the
v1.10 addendum was missing and caught by the audit.
---/ci---
29 KiB
ACDL — Architecture (v1.1 target)
Target architecture for the real Agentic Cloud Delivery Platform. Source of truth for how:
docs/architecture.md(v0.2) is the upstream draft; this file is the ACDL-repo operating copy, refined at phase boundaries. Where this file anddocs/vision.mdconflict, the vision wins.
Status
Architecture is at v0.2 upstream (docs/architecture.md). Milestone v1.1
finalizes it to v1.0 in Phase 07 by resolving the 11 open decisions
(see PROJECT.md open-decision resolutions table). This file records the
locked commitments and the v1.1 spike scope.
Overview
The platform is four layers + six cross-cutting concerns. The sixth concern — the engine abstraction (§12) — is first-class, not an implementation detail. The vision's "Two Consumer Surfaces, One Platform" tenet binds everything: L3A and L3B converge on the same contract schema, the same policy envelope, and the same evidence stream.
┌──────────── acdl-contracts ────────────┐
Developer ───▶ │ commit contract.yaml │ (L3A)
Citizen dev ──▶ │ Issue → agent → contract.yaml │ (L3B)
└────────────────┬───────────────────────┘
│ (push)
▼
┌──────────────────────┐
│ central pipeline │
│ (acdl repo, Gitea │
│ Actions / act_runner) │
└────────┬─────────────┘
│
┌─────────────────────────┼─────────────────────────┐
▼ ▼ ▼
contract→IR resolution policy (Checkov/Kyverno) confidence signal
│ │ │
▼ ▼ ▼
Terraform adapter ──▶ terraform plan ──▶ PolicyCheckResult ──▶ {score,band}
│ │
▼ ▼
dev (autonomous, ≥0.50) qa (HITL, ≥0.75) prod (HITL, ≥0.90) dr (HITL, ≥0.95)
│
▼
DynamoDB outbox ──▶ S3 Object Lock (7-yr, source of truth) ──▶ GitHub audit repo (hot index)
│
▼
acdl-evidence (timeline UI)
Layers
Layer 1 — Foundational Primitives
Single-purpose, engine-agnostic primitive modules. L1 modules do not compose with other L1s; L1 takes its environment as input. The L1 interface is defined against the Target Stack IR, not against Terraform directly (the IR is shaped to round-trip to Terraform in v1, per §12.1).
- No inter-L1 references. L1 may call Terraform data sources.
- Semver: interface → MAJOR, behavior → MINOR, lifecycle → PATCH (W3.D).
- Immutability on publication. 12-month deprecation window.
- AI refinement is a flag; the trigger is the W1.A joint condition.
Layer 2 — Composed Stacks
Combine L1 primitives into deployable shapes. Each codebase maps to one
canonical L2 stack (multiStack: true only per W1.B). Shape X
(parameterized module) or Shape Y (thin-composition layer). Hierarchical
composition, max depth 5, only registered L1s. The thin-composition tree's
wires field is defined against the IR's relationship type, not a Terraform
module block.
Pipeline quality checks: secrets-in-plaintext, public ingress, IAM wildcard, KMS key reference, tag compliance, naming convention. Restricted from thin-composition: IAM principal creation, network boundary creation, key/secret creation, external data transfer. Auto-promote after 3 observed usages.
Layer 3A — Developer Consumer Surface
Tag-based reference to the central pipeline template. Developer-owned workflow file, no platform auto-sync. L3A and L3B are parallel paths, not a progression. W2.A (Path B): tag for dev/qa, SHA for prod; platform CLI resolves tag→SHA for prod-bound workflows.
Layer 3B — Agentic Consumer Surface
Hybrid runtime, skill as markdown, agent as executor. Trust model: trust
and always verify on the platform side. Skill envelope (4 dimensions).
Stateless agents, all state in the platform. profile: agentic marker
unlocks naturalLanguageIntent, confidenceAtSubmission, agentTrace.
Initial skill catalog (BA.A): web API, worker, scheduled job, static asset,
basic observability bootstrap.
Environment progression:
| Environment | Autonomy | Attester | Gate |
|---|---|---|---|
| dev | Full autonomy (no HITL) | — | Confidence ≥ 0.50, all six inputs present |
| qa | Held for attestation | QA | GitHub Deployment approval + full QA matrix (§10) |
| prod | Held for attestation | SRE | GitHub Deployment approval + full SRE matrix (§10) |
| dr | Held for attestation | SRE | GitHub Deployment approval + dr-drill evidence |
Staging is removed. Dev is the only autonomous environment.
Cross-cutting concerns
Central pipeline template (§6)
JSON Schema (draft 2020-12) with a thin domain wrapper. Central repo +
generated client libraries. Multi-stage validation: schema → policy → NFR →
confidence. Distributed enrichment. GitOps reconciler (K8s API; cdlc-gitops
state → CRDs) + Terraform execution layer (§12.5). The pipeline emits one
PolicyCheckResult per policy rule; the confidence signal consumes them as
one normalized input.
Contract schema (§7)
Central repo + generated client libraries. Strict fail-fast at schema stage, multi-stage validation with reason codes from a published vocabulary. W3.E: per-env mandatory inputs —
- dev:
stack,environment - qa adds:
validation.e2eSuite,validation.loadTest - prod adds:
runbook,dashboard,oncall - dr adds:
drDrillRef inputsalways optional;profile: agenticfields optional everywhere.
Confidence signal (§8)
Six canonical inputs, weighted sum with per-input breakdown. Per-env
thresholds: dev ≥ 0.50, qa ≥ 0.75, prod ≥ 0.90, dr ≥ 0.95. Structured output
{ score, band, perInput, reasonCodes }. 1-year storage, no retraining in
v1. Halt with explicit reason on missing input.
Policy input = list of PolicyCheckResult records (engine-agnostic).
Severity → penalty: critical → hard override to mandatory block; high →
-0.2; medium → -0.05; low → -0.01; info → 0.0. One critical finding
hard-overrides the score regardless of all other inputs.
BA.B: thresholds frozen for v1; tuning begins v1.2 (quarterly FP/FN tracking; override = Infra & Ops + SRE joint sign-off, itself a confidence-event).
Audit and evidence stream (§9)
Tiered ledger: S3 with Object Lock in compliance mode (cold, source of
truth, 7-year retention) + GitHub audit repo (acdl-evidence, hot
query index, not part of the chain). Daily checkpoints. Event schema: JWS
detached signature, prev_event_hash chain, controlled-vocabulary
event_type. Outbox pattern: local durable outbox + async worker.
Outbox database = DynamoDB. RPO = 0 (synchronous write to local outbox before contract submission ack); RTO = async worker's dead-letter recovery. Single-region in v1. The outbox also stores per-contract QA and prod approver identities (the only durable record outside GitHub's audit log).
Human-in-the-Loop mechanics (§10)
Pre-execution gates. qa, prod, dr are PR-based attestation gates backed by GitHub Environments with required reviewers. No partial deployment to roll back on rejection (qa, prod); dr is a separate GitHub Deployment against a separate cluster/region.
Reviewer routing: GitHub CODEOWNERS + Environment required reviewers (qa → QA; prod → SRE; dr → SRE). CODEOWNERS routes, does not enforce identity distinctness.
Separation of duties (platform-internal, not GitHub-native, not Kyverno
in v1): on dev→qa promotion the platform writes the QA approver's GitHub
identity to the DynamoDB outbox keyed by contractId; on qa→prod it reads
the stored QA approver and the new SRE approver; if equal, it blocks, emits
SEPARATION_OF_DUTIES_VIOLATION, and routes a halt artifact to SRE on-call.
Full 8-concern attestation matrix (functional, performance, security
posture, contract NFRs, operational readiness, incident response,
capacity/cost, resilience) — see docs/architecture.md §10.4.
Timeout: 1 business day = warn + escalate; 2 business days = auto-freeze +
re-submit (linked via supersedes). Rejection returns the contract to HELD;
the audit chain is extended, not torn up.
Agentic stack (§11)
Hybrid runtime: platform-managed control plane + consumer-owned agent. Versioned, signed skill catalog over MCP. Skill envelope enforced on invocation and result submission. Consumer-owned skill execution; the platform does not run the skill. Stateless agents, all state in the platform. Skills are reviewed for sensitive data before release (Infra & Ops owns the review; it is the mandatory release gate).
Angine execution (§12) — the binding constraint
Target Stack IR (locked): a engine-neutral description of resources (typed inputs/outputs/NFRs), relationships (single parent per child), composition (tree, max depth 5), and policy hooks. The L1 registry, L2 thin-composition tree, contract YML, and PolicyCheckResult schema are all defined against the IR — none against any specific engine.
Angine adapters are the only engine-specific code. An adapter compiles the IR into a engine execution plan. v1 ships exactly one adapter: the Terraform adapter. v2+ may add OpenTofu, Pulumi, K8s CRDs without architectural change.
v1 reality: the IR is shaped to round-trip cleanly to Terraform (nearly isomorphic). As more adapters appear, the IR gets more expressive and the adapters gain translation logic; the L1 content, the YML standard, and the thin-composition tree do not change.
Terraform adapter (v1): translates IR-typed L1 interface → Terraform
variable/output blocks; IR-typed L2 thin-composition tree → Terraform
root module; IR-typed relationships → module references; emits a
terraform plan from the IR. The adapter is a thin layer; it does not own
L1/L2 content.
State storage: S3 (state) + DynamoDB (locking), cloud-managed, single-region in v1.
Policy toolchain: Checkov for Terraform plan policy (the L2 checks + tag/naming); Kyverno for K8s-native/platform-internal policy; OPA reserved for cross-resource cases, explicitly last resort.
Policy result normalization (§12.6): the confidence signal consumes a
normalized PolicyCheckResult schema, not raw engine output.
{
"contractId": "uuid",
"evaluatedAt": "ISO-8601",
"engine": "checkov | kyverno | opa",
"ruleId": "CKV_AWS_24 | KYVERNO_NO_PRIVILEGED | ...",
"severity": "critical | high | medium | low | info",
"result": "pass | fail | skipped | error",
"message": "human-readable",
"evidence": { "...engine-specific, opaque to the signal..." },
"resourceRef": "IR-typed resource identifier"
}
Execution layer: GitHub/Gitea Actions in the central pipeline repo. State
locking via DynamoDB. AWS credentials via OIDC federation — long-lived
credentials are forbidden (§12.5). The platform does not run
terraform apply against a developer's workstation; all execution is in
the central pipeline.
Registry maintenance: L1 publication updates the L1 registry in the same PR. The registry is the IR-typed contract, not a Terraform-specific variable schema.
Contract→IR resolution: the contract declares intent in IR-typed terms; the pipeline resolves it to a target stack (list of L1 instances + inputs + relationships); the Terraform adapter compiles the target stack to a plan.
v1.1 spike scope
The spike (Phases 08–10) materializes the minimum that proves the IR commitments hold (no polyglot mess):
- One L1:
l1-s3(IR-typed interface; the only AWS resource in the spike). - One L2 thin-composition:
l2-static-assets(referencesl1-s3only). - Terraform adapter: IR →
terraform planagainst AWS via OIDC. - One contract submission → contract→IR →
terraform plan→ CheckovPolicyCheckResult→ confidence signal → evidence event to the DynamoDB outbox. - State: S3 + DynamoDB (real AWS, single-region).
Out of spike scope: full HITL matrix wiring, Kyverno, OPA, MCP skill catalog, GitOps reconciler, multi-region, prod/dr environments, the 5-skill L3B catalog. Those are post-spike (v1.2+) platform build-out.
Gitea API surface (carried from v1.0, refined)
| Capability | Gitea support | ACDL approach (v1.1) |
|---|---|---|
| Org-scoped repo create | POST /api/v1/orgs/{org}/repos |
Used for any new repos |
| Native Pages | None | Serve acdl-evidence via raw file URLs (unchanged from v1.0) |
| Environments API | None; act_runner ignores environment: |
Model HITL gates via workflow_dispatch approval inputs (v1.0 D-013 pattern) — refined in Phase 07 for the real pre-execution gate model |
repository_dispatch |
Not supported | Cross-repo trigger via workflow_dispatch API (unchanged) |
| Reusable workflows | Supported | acdl/.gitea/workflows/pipeline.yml via uses: ...@<ref> |
id-token: write / OIDC |
Not supported (RESEARCH TARGET 1, conf 0.95). Gitea docs list id-token as an unsupported GitHub-only scope; open proposal go-gitea/gitea#33681; draft PR go-gitea/gitea#36988 unmerged. Even Gitea's own CI uses long-lived AWS keys (issue #37980). |
Spike waiver D-039: per-run-rotated long-lived key (rotated after each run by scripts/rotate_spike_key.sh). Real OIDC deferred to v1.2, blocked on PR #36988. |
actions/configure-aws-credentials |
Unusable without OIDC | Spike uses static AWS creds from a (rotated) Gitea Actions secret via the aws-actions/configure-aws-credentials@v4 access-key-id/secret-access-key inputs, or plain AWS_ACCESS_KEY_ID/AWS_SECRET_ACCESS_KEY env vars. v1.2 switches to role-to-assume when OIDC lands. |
Branch pinning rule (refined for W2.A)
- Dev/qa contracts reference the reusable workflow by tag
(
@v1.1-spike). - Prod-bound workflows reference by SHA; the platform CLI
(
platform/cli/resolve-tag.ts, Phase 07) resolves the current tag to its SHA. (Spike scope: the CLI is a stub; the real CLI lands in v1.2.)
Verification toolchain
ACDL has no package.json. The verification gate substitutes:
- typecheck:
terraform validate,python3 -m py_compile, JSON Schema validation (ajvorpython -m jsonschema) againstschemas/. - test: per-phase
scripts/verify_phaseNN.sh(Phase 06: archive integrity; Phase 07: schema validation + decision-resolution completeness; Phase 08: OIDC assume-role + state backend; Phase 09: IR + L1 + adapterterraform plan; Phase 10: end-to-end contract submission). - build:
terraform init(real build for the spike). - See
PERSONAS.mdverification_toolchain.
Build order (v1.1)
- Phase 06 — archive demo, reorient repo.
- Phase 07 — finalize architecture v1.0; author schemas + designs.
- Phase 08 — AWS OIDC bootstrap (use temp key once, rotate).
- Phase 09 — IR +
l1-s3+ Terraform adapter →terraform plan. - Phase 10 —
l2-static-assets+ contract→IR → end-to-end spike. - COMPLETE gate — review → ship
v1.2.0→ audit. DONE.
v1.2 build-out scope
v1.2 takes the v1.1 spike (dev-only, plan-only, single S3 L1) to a real,
simpler, better-documented platform that delivers a microservice to AWS ECS
Fargate end-to-end. The locked architecture (§1–§12) is unchanged — v1.2
extends the implementation, not the design.
In scope (five axes, user-directed 2026-07-21)
- Re-evaluate the current state. go-gitea/gitea#36988 (OIDC for Gitea
Actions) re-checked 2026-07-21: still open (last updated 2026-05-27,
not merged). Real OIDC remains deferred to v1.3+; v1.2 extends the D-039
per-run-rotated-key waiver as D-047. The waiver continues to satisfy
§12.5's intent (no persistently long-lived key): the spike key is
rotated after each run by
scripts/rotate_spike_key.sh, and Phase 12 tightens the IAM scoping + rotation hygiene. - NFR improvements on the existing spike. Least-privilege IAM audit of
spike_runner_policy.json; idempotentcreate_state_backend.py/create_iam_user.py; proper exit codes / error handling; P1-1 redaction (two AWS access key IDs in.ciagent/VERIFY.mdPhase 09 narrative). - Streamline / simplify the current setup. Consolidate
run_spike_plan.sh+run_spike_e2e.shinto onescripts/run_platform.sh; remove dead code and staleplatform/paths. - README.md fully up to date on how the platform works. Reflect v1.1
complete; document the actual spike flow,
scripts/run_platform.sh, the real repo layout, and the v1.2 objective. - Bootstrap a consumer repo with a basic microservice deployed to ECS
end-to-end. New Gitea repo
acdl-consumer-microservice(orgcontinuous-intelligence); new IR-typed L1s (l1-vpc,l1-ecs-cluster,l1-ecs-service,l1-iam-role,l1-alb,l1-ecr); newl2-microservicethin-composition; one contract submission →terraform apply(dev, autonomous per §10, confidence ≥ 0.50) → a live ECS Fargate service serving HTTP 200 → evidence event to the DynamoDB outbox → acdl-evidence timeline.
Angine extension (ECS Fargate)
The Terraform adapter (§12) remains the only engine-specific code. v1.2
expands the adapter TYPE_MAP to cover the six new ECS-shaped IR resource
types. The L1 interface shape (IR-typed inputs/outputs/NFRs, registered in
modules-ir/registry.json) is unchanged — only the set of registered L1s
grows. The IR commitments (REQ-28) continue to hold: modules-ir/,
schemas/, contracts/, core/confidence_signal.py,
core/contract_resolver.py, core/outbox_writer.py
remain engine-agnostic.
terraform apply (dev only)
v1.2 lifts the engine execution from plan to apply for the dev
environment only. Dev is autonomous per §10 (confidence ≥ 0.50, no HITL).
apply for qa/prod/dr remains HITL-gated and out of scope for v1.2. The
apply result (resources created, plan diff) is captured in the evidence
stream as a terraform.apply event.
Out of scope for v1.2 (deferred to v1.3+)
| Feature | Reason |
|---|---|
| Real OIDC federation | go-gitea/gitea#36988 still open. v1.2 extends D-039 waiver (D-047); real OIDC is v1.3+. |
| Full HITL matrix wiring (qa/prod/dr) | v1.2 is dev-only autonomous apply; HITL wiring is v1.3. |
| Kyverno + OPA policy engines | v1.2 keeps Checkov only; Kyverno/OPA are v1.3. |
| MCP skill catalog + real L3B agent | v1.2 keeps the L3B stub; the 5-skill catalog is v1.3. |
| Audit ledger build-out (S3 Object Lock + JWS + async worker + DLQ + daily checkpoints) | v1.2 keeps the v1.1 outbox; the regulatory ledger is v1.3. |
| Multi-region state / outbox | Single-region in v1 (§9, §12.3); multi-region is v1.3+. |
| Prod/dr environments | v1.2 is dev-only; prod/dr are v1.3. |
| GitOps reconciler (ArgoCD/Flux) | v1.3+. |
Build order (v1.2)
- Phase 11 — re-eval #36988 + NFR audit + simplification findings + README rewrite.
- Phase 12 — NFR harden + simplify (idempotent bootstrap, one
run_platform.sh, IAM audit, redactions). - Phase 13 — six ECS L1s + adapter
TYPE_MAPexpansion. - Phase 14 —
l2-microservice+ contract schema extension. - Phase 15 — consumer repo +
terraform apply(dev) → live ECS service. - Phase 16 — capstone e2e: consumer commit → live HTTP 200 → evidence → timeline.
- COMPLETE gate — review → ship
v1.3.0→ audit.
v1.8 Architecture Addendum
Milestone v1.8 (complete, tag
v1.8.0). Adds encryption-by-default, deletion-protection-by-default, uptime monitoring, decommission alias, engineering standards, and path documentation.
New Primitives
kms-key(aws:kms:key) — Per-stack customer-managed KMS key withenable_key_rotation = true. One key per L2 deployment (no shared keys). Wired into both L2 compositions as a child, with itskms_key_arnoutput connected to all children'skms_key_arninput. Adapter emitsaws_kms_key+enable_key_rotation.uptime(aws:ecs:uptime-service) — Uptime-kuma on ECS Fargate with a feature flag (feature_flag_enabled), monitored endpoints (HTTP/DNS/TCP), alert channels (Teams/email/SMS/GitHub issues). Deployed by default after any L2 module with a separate terraform state. When the feature flag is false, the adapter emits no resources.
Encryption by Default
All 12 L1 primitives have encryption_enabled NFR (default true). Primitives
with at-rest data (s3, rds, ecr, ecs-service, ecs-cluster) have an optional
kms_key_arn input. The adapter emits encryption blocks (SSE-KMS for S3,
storage_encrypted for RDS, encryption_configuration for ECR) referencing the
per-stack CMK when provided. Managed KMS fallback with stderr warning for
standalone L1 deployments.
Deletion Protection by Default
All 12 L1 primitives have deletion_protection NFR (default true). The
adapter emits lifecycle { prevent_destroy = true } when true. L2 modules
expose a features.deletion_protection flag (default true) propagated to
all children via the resolver. Setting inputs.deletion_protection: false
in the contract disables it for the whole stack.
Decommission Alias
A mode: decommission on the deploy pipeline implements a 2-step destroy:
- Disable deletion protection (resolve with
deletion_protection: false, terraform plan/apply, HITL SRE gate via GitHub environment). - Zero counts + destroy (
decommission_transformzeroes all scalable counts, terraform plan/apply, second HITL SRE gate).
CMDB validation via DynamoDB acdl-change-requests table. The Lambda
validate_change_request action queries the table and asserts
status == "approved" + consumerRepo match.
Adapter Expansion
TYPE_MAP grew from 16 to 19 entries (+ aws:kms:key, aws:kms:alias,
aws:ecs:uptime-service). Specialized emission branches added for KMS key
rotation, S3 SSE-KMS configuration, uptime ECS Fargate task, and
prevent_destroy lifecycle on all resources.
Pipeline Stages
The deploy pipeline grew from 8 to 9 stages (+ deploy-uptime after
publish-outputs). The deploy-uptime stage constructs a synthetic uptime
contract from the L2 stack outputs, resolves + adapts it to a separate
terraform state directory, and publishes the uptime URL via PR comment.
Forge-Agnostic API URLs
The platform Lambda (contract_ingestor.py) reads GITHUB_API_BASE env
for forge-agnostic API URLs. GitHub uses /search/issues; Gitea uses
/repos/{owner}/{repo}/issues. Detection via /api/v1 in the base URL.
v1.9 Addendum (2026-07-23)
New Components
core/contract_resolver.pyinterpolation (D-081): the resolver now expands${env.<field>}+${contract.<field>}tokens post-schema-validation, pre-IR-resolution. The env context is the loaded environment onboarding JSON (core/environments/<name>.json, schemaschemas/environment.schema.json). The resolver'schild_input_maproutes L2 wires to the sub-resource that declares the input (P1-1 —desired_count→aws:ecs:service,family→aws:ecs:task_definition).core/environment_check.pyload()(REQ-104): loads + returns the parsed environment JSON; emits a stderr warning for placeholderaccount_idwhen env != dev.core/hitl_gates.py(REQ-108, D-084): the HITL pre-execution attestation gate. Records the approver identity to the DynamoDB outbox (approver_qa/approver_prod/approver_dr), runs the separation-of- duties check on prod, invokes the attestation matrix, returns(ok, reason). Dev skips (autonomous).run_platform.shcallsattestbefore apply for qa/prod/dr.core/attestation_matrix.py(REQ-109, D-084): the 8-concern attestation matrix fromhitl_matrix_design.md§10.4. Offline-testable concerns (contract NFRs, schema validity, policy pass) run for real; operator-supplied concerns accept signed evidence artifacts validated for freshness + schema. Signature verification skips whenACDL_ATTESTATION_SIGNING_KEY_IDis unset (D-089).core/separation_of_duties.pyroute_halt_artifact(REQ-107): real SNS publish (acdl-sod-halttopic, ARN fromACDL_SOD_HALT_TOPIC_ARN) + outbox fallback (SEPARATION_OF_DUTIES_VIOLATIONevent). The SNS topic is defined interraform/platform/main.tf.adapters/wiz/wiz_adapter.pyWizClient(REQ-110): real GraphQL API client (<WIZ_API_URL>/graphql, Bearer auth, pagination viapageInfo.hasNextPage).fetch_and_adapttranslates issues →PolicyCheckResult. Graceful degrade when unconfigured.adapters/kyverno/kyverno_adapter.py(REQ-111): fleshed-outPolicyReport→PolicyCheckResultmapping (pass/fail/skip/warn + severity + skip-with-reason + resource construction). Inactive-for-TF guard preserved.
Per-Environment Promotion (D-082)
The deploy workflow (.github/workflows/deploy.yml +
.gitea/workflows/deploy.yml, byte-identical) declares an environment
workflow_call input. When non-empty, run_platform.sh --environment <name> overrides the contract's environment field before schema
validation (D-088). One CI job per environment; promotion = running the
matching job, no environment: field editing. Per-env contract files
(contracts/<module>.<env>.yaml) use interpolation for env-specific
values.
Adapter Parameterization (P1-1, D-085)
The adapter (adapters/terraform/adapter.py) reads ECS/ALB/VPC defaults
from L1 interface.json inputs (desired_count, launch_type,
family, target_type, load_balancer_type, name). The adapter is a
thin translator; the child_input_map routes wires to the declaring
sub-resource.
Deferred (D-083)
S3 Object Lock + JWS detached signatures + async worker + DLQ + daily checkpoints (audit ledger build-out) — deferred to a future milestone. The hash-chain + DynamoDB-outbox path remains the v1.9 production audit record.
v1.10 Addendum — Regression VERIFY + Local Emulators + Capability Re-Verification
Regression-Class VERIFY (D-091, core/regression_verify.py)
The standard VERIFY stage was diff-scoped (it checked the phase diff
only, never re-ran underlying capability). This let 8 NFR-patch phases
(v1.9.1–v1.9.8) pass while the platform decayed. The regression-class
VERIFY (core/regression_verify.py) re-runs capability checks against
the current codebase and tags each Verified/Decayed/Broken. It fails
closed on any non-Verified capability, blocking milestone completion.
The registry (CAPABILITY_REGISTRY) holds 16 capability checks
(CAP-001..CAP-016): 12 local-tier + 4 live-AWS. Adding a capability is
a single function + one registry entry. The gate runs via
scripts/run_regression.sh and writes .ciagent/REGRESSION_REPORT.md
.json.
Local Emulating Adapters (D-092, core/local_emulators.py)
Four local adapters let the platform run the full headline E2E without cloud credentials:
FlatFileOutbox— flat-file DynamoDB outbox emulator (hash-chained JSONL; resumable across instances; chain verification).LocalEcsEmulator— local ECS Fargate HTTP 200 emulator (binds port 0 on 127.0.0.1; daemon thread; clean destroy).LocalS3StateBackend— rewrites the terraform S3 backend to a local backend (per-stack tfstate in a temp folder).LocalLambdaStub— invokes the contract_ingestor handler in-process (patches_get_dynamodb/_get_secrets_client/urllib.urlopen; DynamoDB writes redirected to the FlatFileOutbox).
run_local_e2e() runs the full pipeline: contract → resolver → adapter
→ local S3 backend → local ECS (HTTP 200) → flat-file outbox (chain
verified) → local Lambda (200). Gated on ACDL_LOCAL_TIER=1.
Capability Re-Verification Sweep (D-093)
.ciagent/CAPABILITY_INVENTORY.md enumerates 16 auto-verified
capabilities + 6 IAM-gated escalated resources. The sweep found and
fixed 7 adapter defects in adapters/terraform/adapter.py (duplicate
outputs, duplicate args, missing required args, deprecated AWS provider
v5 arg names). The headline E2E now passes at both tiers: local
emulator + live-AWS terraform init/validate/plan.
Adapter Defect Fixes (P54)
7 defects fixed in adapters/terraform/adapter.py:
- Duplicate output definitions (per-resource + stack-level both emitted).
- Duplicate
desired_count/launch_typeon ECS service. - Duplicate
target_type/family/load_balancer_type. - Missing
assume_role_policy/role_nameon IAM role (L2 composition gap). - Missing
cidr_block/vpc_id/namedefaults on VPC/subnet/route_table/ ECS cluster/ECR repository. - ECR
kms_key_arnunsupported arg →encryption_configurationblock. - CloudFront OAC + WAF deprecated arg names (AWS provider v5):
signing_behavior,signing_protocol,origin_access_control_id,s3_origin_config.origin_access_identity,origin_id,rule(singular),scope=CLOUDFRONT(uppercase).